Please determine the flight time of the racquet ball below.

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The same projectile experiment was conducted as you did in class. A racquet ball rolls down a track, leaves the track at an initial height of 0.961 m above the floor, with an exit speed \( v_{\text{exit}} = 1.40 \, \text{m/s} \) at an angle \( \theta_{\text{exit}} = 7.46^\circ \). The landing spot was repeatedly measured ten times, and the racquet ball’s horizontal range data is provided below.

| Data run      | 1     | 2     | 3     | 4     | 5     | 6     | 7     | 8     | 9     | 10    |
|---------------|-------|-------|-------|-------|-------|-------|-------|-------|-------|-------|
| Landing spot (m) | 0.585 | 0.590 | 0.595 | 0.590 | 0.585 | 0.580 | 0.580 | 0.585 | 0.580 | 0.575 |

In this experiment, a racquet ball consistently rolls down a track, and its landing spot is measured after leaving the track. The landing spot varies slightly with each trial, showcasing the small deviations in the projectile's horizontal range.
Transcribed Image Text:The same projectile experiment was conducted as you did in class. A racquet ball rolls down a track, leaves the track at an initial height of 0.961 m above the floor, with an exit speed \( v_{\text{exit}} = 1.40 \, \text{m/s} \) at an angle \( \theta_{\text{exit}} = 7.46^\circ \). The landing spot was repeatedly measured ten times, and the racquet ball’s horizontal range data is provided below. | Data run | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | |---------------|-------|-------|-------|-------|-------|-------|-------|-------|-------|-------| | Landing spot (m) | 0.585 | 0.590 | 0.595 | 0.590 | 0.585 | 0.580 | 0.580 | 0.585 | 0.580 | 0.575 | In this experiment, a racquet ball consistently rolls down a track, and its landing spot is measured after leaving the track. The landing spot varies slightly with each trial, showcasing the small deviations in the projectile's horizontal range.
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